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Corrigendum: Crowdsourcing Natural Products Discovery to Access Uncharted Dimensions of Fungal Metabolite Diversity 下载免费PDF全文
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Controlled Light‐Mediated Preparation of Gold Nanoparticles by a Norrish Type I Reaction of Photoactive Polymers 下载免费PDF全文
Florian Mäsing Dr. Artur Mardyukov Carsten Doerenkamp Prof. Dr. Hellmut Eckert Ursula Malkus Harald Nüsse Prof. Dr. Jürgen Klingauf Prof. Dr. Armido Studer 《Angewandte Chemie (International ed. in English)》2015,54(43):12612-12617
Gold nanoparticles (AuNPs) are subjects of broad interest in scientific community due to their promising physicochemical properties. Herein we report the facile and controlled light‐mediated preparation of gold nanoparticles through a Norrish type I reaction of photoactive polymers. These carefully designed polymers act as reagents for the photochemical reduction of gold ions, as well as stabilizers for the in situ generated AuNPs. Manipulating the length and composition of the photoactive polymers allows for control of AuNP size. Nanoparticle diameter can be controlled from 1.5 nm to 9.6 nm. 相似文献
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Dr. Hee‐Sun Han Paul G. Cantalupo Dr. Assaf Rotem Dr. Shelley K. Cockrell Martial Carbonnaux Prof. James M. Pipas Prof. David A. Weitz 《Angewandte Chemie (International ed. in English)》2015,54(47):13985-13988
Metagenomic studies suggest that only a small fraction of the viruses that exist in nature have been identified and studied. Characterization of unknown viral genomes is hindered by the many genomes populating any virus sample. A new method is reported that integrates drop‐based microfluidics and computational analysis to enable the purification of any single viral species from a complex mixed virus sample and the retrieval of complete genome sequences. By using this platform, the genome sequence of a 5243 bp dsDNA virus that was spiked into wastewater was retrieved with greater than 96 % sequence coverage and more than 99.8 % sequence identity. This method holds great potential for virus discovery since it allows enrichment and sequencing of previously undescribed viruses as well as known viruses. 相似文献
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Tania Romero‐Morcillo Dr. Maksym Seredyuk Prof. Dr. M. Carmen Muñoz Prof. Dr. Jose A. Real 《Angewandte Chemie (International ed. in English)》2015,54(49):14777-14781
Herein, we report a way to achieve abrupt high‐spin to low‐spin transition with controllable transition temperature and hysteresis width, relying not on solid‐state cooperative interactions, but utilizing coherency between phase and spin transitions in neutral FeII meltable complexes. 相似文献
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A Zinc(II) Photocage Based on a Decarboxylation Metal Ion Release Mechanism for Investigating Homeostasis and Biological Signaling 下载免费PDF全文
Dr. Prem N. Basa Sagar Antala Prof. Dr. Robert E. Dempski Prof. Dr. Shawn C. Burdette 《Angewandte Chemie (International ed. in English)》2015,54(44):13027-13031
Metal ion signaling in biology has been studied extensively with ortho‐nitrobenzyl photocages; however, the low quantum yields and other optical properties are not ideal for these applications. We describe the synthesis and characterization of NTAdeCage, the first member in a new class of Zn2+ photocages that utilizes a light‐driven decarboxylation reaction in the metal ion release mechanism. NTAdeCage binds Zn2+ with sub‐pM affinity using a modified nitrilotriacetate chelator and exhibits an almost 6 order of magnitude decrease in metal binding affinity upon uncaging. In contrast to other metal ion photocages, NTAdeCage and the corresponding Zn2+ complex undergo efficient photolysis with quantum yields approaching 30 %. The ability of NTAdeCage to mediate the uptake of 65Zn2+ by Xenopus laevis oocytes expressing hZIP4 demonstrates the viability of this photocaging strategy to execute biological assays. 相似文献
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Prof. Sergey N. Britvin Dr. Sergei A. Kashtanov Dr. Maria G. Krzhizhanovskaya Dr. Andrey A. Gurinov Dr. Oleg V. Glumov Dr. Stanislav Strekopytov Dr. Yury L. Kretser Prof. Anatoly N. Zaitsev Prof. Nikita V. Chukanov Prof. Sergey V. Krivovichev 《Angewandte Chemie (International ed. in English)》2015,54(48):14340-14344
The Group 18 elements (noble gases) were the last ones in the periodic system to have not been encountered in perovskite structures. We herein report the synthesis of a new group of double perovskites KM(XeNaO6) (M=Ca, Sr, Ba) containing framework‐forming xenon. The structures of the new compounds, like other double perovskites, are built up of the alternating sequence of corner‐sharing (XeO6) and (NaO6) octahedra arranged in a three‐dimensional rocksalt order. The fact that xenon can be incorporated into the perovskite structure provides new insights into the problem of Xe depletion in the atmosphere. Since octahedrally coordinated XeVIII and SiIV exhibit close values of ionic radii (0.48 and 0.40 Å, respectively), one could assume that XeVIII can be incorporated into hyperbaric frameworks such as MgSiO3 perovskite. The ability of Xe to form stable inorganic frameworks can further extend the rich and still enigmatic chemistry of this noble gas. 相似文献
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